FILLING BAG WITH GOOD THERMAL INSULATION AND ANTI-COLLISION PERFORMANCE AND MANUFACTURING METHOD THEREOF
20210155391 ยท 2021-05-27
Inventors
Cpc classification
B65D81/03
PERFORMING OPERATIONS; TRANSPORTING
B65D75/5877
PERFORMING OPERATIONS; TRANSPORTING
B65D75/563
PERFORMING OPERATIONS; TRANSPORTING
B65D75/008
PERFORMING OPERATIONS; TRANSPORTING
B65D33/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D81/03
PERFORMING OPERATIONS; TRANSPORTING
B65D33/10
PERFORMING OPERATIONS; TRANSPORTING
B65D75/00
PERFORMING OPERATIONS; TRANSPORTING
B65D75/58
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filling bag with good thermal insulation and anti-collision performance and a manufacturing method thereof. The filling bag includes a sealed bag body and a filling tube head, and the sealed bag body includes a substrate layer and at least one thin film layer. At least one side of the substrate layer is provided with a mesh adhesive layer, and the thin film layer is compounded with the substrate layer through the mesh adhesive layer, so that a plurality of bubble cavities are formed between the substrate layer and the thin film layer. The bubble cavities are filled with gas. The thin film layer is compounded on the side of the sealed bag body to form a layer with dense bubble cavities filled with gas, a gas insulation interlayer is formed on the side of the sealed bag body, which has good thermal insulation effect.
Claims
1. A filling bag with good thermal insulation and anti-collision performance, comprising a sealed bag body and a filling tube head, wherein, the filling tube head is provided on a top of the sealed bag body, the sealed bag body comprises a substrate layer and at least one thin film layer; at least one side of the substrate layer is provided with a mesh adhesive layer, and the at least one thin film layer is compounded with the substrate layer through the mesh adhesive layer, so that a plurality of bubble cavities are formed between the substrate layer and the at least one thin film layer; and the plurality of bubble cavities are filled with a gas.
2. The filling bag according to claim 1, wherein the sealed bag body is a stand up pouch.
3. The filling bag according to claim 1, wherein a lower portion of the sealed bag body is provided with a liquid outlet tap.
4. The filling bag according to claim 1, wherein the top of the sealed bag body is provided with a handle.
5. The filling bag according to claim 1, wherein the mesh adhesive layer is composed of a plurality of sealed adhesive rings evenly arranged, and the at least one thin film layer is compounded with the substrate layer through the plurality of sealed adhesive rings, so that a plurality of sealed bubble cavities are formed between the substrate layer and the at least one thin film layer, and each of the plurality of sealed bubble cavities is sealed with a foaming agent.
6. The filling bag according to claim 5, wherein the sealed bag body comprises a bottom plate and at least three side plates, a bottom edge of each side plate of the at least three side plates and an edge of the bottom plate form a folding edge through a bottom sealed edge, side edges of two side plates adjacent to each other of the at least three side plates are sealed together through a longitudinal sealed edge, and a top edge of the each side plate is sealed together through a top sealed edge.
7. The filling bag according to claim 1, wherein the mesh adhesive layer is composed of a plurality of semi-sealed adhesive rings evenly arranged, a gap is arranged between two adjacent semi-sealed adhesive rings, the at least one thin film layer is compounded with the substrate layer through the plurality of semi-sealed adhesive rings, so that a plurality of bubble cavities with the gap are formed between the substrate layer and the at least one thin film layer, the gas flows between the plurality of bubble cavities with the gap, and the sealed bag body is provided with an inflation valve.
8. The filling bag according to claim 7, wherein the sealed bag body comprises a bottom plate and at least three side plates, a bottom edge of each side plate of the at least three side plates and an edge of the bottom plate form a folding edge through a bottom sealed edge, side edges of two side plates adjacent to each other of the at least three side plates are sealed together through a longitudinal sealed edge, a top edge of the each side plate is sealed together through a top sealed edge, and each of the bottom sealed edge and the longitudinal sealed edge is provided with a plurality of air holes, wherein the plurality of air holes communicate with the plurality of bubble cavities with the gap, respectively; and the inflation valve is arranged on the bottom plate or the at least three side plates.
9. A method for manufacturing a filling bag with good thermal insulation and anti-collision performance, comprising the following steps: (1) printing one layer of a mesh adhesive layer on one side of a substrate layer, wherein the mesh adhesive layer is composed of a plurality of semi-sealed adhesive rings evenly arranged, and a gap is arranged between two adjacent semi-sealed adhesive rings; (2) compounding a thin film layer on the substrate layer by the mesh adhesive layer to form a composite layer, wherein a plurality of bubble cavities with the gap are formed between the substrate layer and the thin film layer; (3) tailoring the composite layer according to a unfold plane view of the filling bag, and pre-punching a filling hole and a liquid outlet hole at a corresponding position on the composite layer; (4) folding the composite layer in half, and placing a film inflation strip in the composite layer, then performing a heat sealing on the composite layer to form a bottom sealed edge, a longitudinal sealed edge and a top sealed edge, wherein each of the bottom sealed edge and the longitudinal sealed edge reserves a space to form a plurality of air holes, an air flows between the plurality of bubble cavities with the gap through the plurality of air holes; and the film inflation strip communicates with the plurality of bubble cavities with the gap; (5) heat sealing a filling tube head in the filling hole, and heat sealing a liquid outlet tap in the liquid outlet hole, respectively.
10. A method for manufacturing a filling bag with good thermal insulation and anti-collision performance, comprising the following steps: (1) printing a mesh adhesive layer on one side of a substrate layer, wherein the mesh adhesive layer is composed of a plurality of sealed adhesive rings evenly arranged; (2) filling each sealed adhesive ring of the plurality of sealed adhesive rings of the mesh adhesive layer with an appropriate amount of a foaming agent; (3) compounding a thin film layer on the substrate layer by the mesh adhesive layer to form a composite layer, wherein, a plurality of bubble cavities are formed between the substrate layer and the thin film layer, and each bubble cavity of the plurality of bubble cavities correspondingly seals the foaming agent; (4) heating the foaming agent to release a gas to fill the each bubble cavity; (5) tailoring the composite layer according to a unfold plane view of the filling bag, and pre-punching a filling hole and a liquid outlet hole at a corresponding position on the composite layer; (6) folding the composite layer in half, then performing a heat sealing on the composite layer to form a bottom sealed edge, a longitudinal sealed edge and a top sealed edge; (7) heat sealing a filling tube head in the filling hole, and heat sealing a liquid outlet tap in the liquid outlet hole, respectively.
11. The filling bag according to claim 2, wherein the mesh adhesive layer is composed of a plurality of sealed adhesive rings evenly arranged, and the at least one thin film layer is compounded with the substrate layer through the plurality of sealed adhesive rings, so that a plurality of sealed bubble cavities are formed between the substrate layer and the at least one thin film layer, and each of the plurality of sealed bubble cavities is sealed with a foaming agent.
12. The filling bag according to claim 3, wherein the mesh adhesive layer is composed of a plurality of sealed adhesive rings evenly arranged, and the at least one thin film layer is compounded with the substrate layer through the plurality of sealed adhesive rings, so that a plurality of sealed bubble cavities are formed between the substrate layer and the at least one thin film layer, and each of the plurality of sealed bubble cavities is sealed with a foaming agent.
13. The filling bag according to claim 4, wherein the mesh adhesive layer is composed of a plurality of sealed adhesive rings evenly arranged, and the at least one thin film layer is compounded with the substrate layer through the plurality of sealed adhesive rings, so that a plurality of sealed bubble cavities are formed between the substrate layer and the at least one thin film layer, and each of the plurality of sealed bubble cavities is sealed with a foaming agent.
14. The filling bag according to claim 2, wherein the mesh adhesive layer is composed of a plurality of semi-sealed adhesive rings evenly arranged, a gap is arranged between two adjacent semi-sealed adhesive rings, the at least one thin film layer is compounded with the substrate layer through the plurality of semi-sealed adhesive rings, so that a plurality of bubble cavities with the gap are formed between the substrate layer and the at least one thin film layer, the gas flows between the plurality of bubble cavities with the gap, and the sealed bag body is provided with an inflation valve.
15. The filling bag according to claim 3, wherein the mesh adhesive layer is composed of a plurality of semi-sealed adhesive rings evenly arranged, a gap is arranged between two adjacent semi-sealed adhesive rings, the at least one thin film layer is compounded with the substrate layer through the plurality of semi-sealed adhesive rings, so that a plurality of bubble cavities with the gap are formed between the substrate layer and the at least one thin film layer, the gas flows between the plurality of bubble cavities with the gap, and the sealed bag body is provided with an inflation valve.
16. The filling bag according to claim 4, wherein the mesh adhesive layer is composed of a plurality of semi-sealed adhesive rings evenly arranged, a gap is arranged between two adjacent semi-sealed adhesive rings, the at least one thin film layer is compounded with the substrate layer through the plurality of semi-sealed adhesive rings, so that a plurality of bubble cavities with the gap are formed between the substrate layer and the at least one thin film layer, the gas flows between the plurality of bubble cavities with the gap, and the sealed bag body is provided with an inflation valve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033]
[0034]
[0035]
[0036]
[0037]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0038] The present disclosure will be further description in detailed in combination with the accompanying drawings and the preferred embodiments as below.
Embodiment 1
[0039] As shown in
[0040] The mesh adhesive layer 7 is composed of a plurality of semi-sealed adhesive rings 701 evenly arranged, a gap 702 is arranged between the two adjacent semi-sealed adhesive rings 701, and a film inflation strip 9 is arranged on the sealed bag body 1.
[0041] The sealed bag body 1 described above includes a bottom plate 101 and four side plates 102. The bottom edge of each side plate 102 and the edge of the bottom plate 101 form a folding edge through the bottom sealed edge 103. The sides of the adjacent two side plates 102 are sealed together through the longitudinal sealed edge 104. The top edge of each side plate 102 is sealed together through the top sealed edge 105. The bottom sealed edge 103 and the longitudinal sealed edge 104 of each side plate 102 are provided with an air hole 106 communicated with the bubble cavity 8, respectively. And the film inflation strip 9 is arranged on the bottom plate 101 or the side plate 102.
[0042] The filling tube head 2 can be arranged on the top sealed edge 105 or on the upper portion of one of the side plates 102.
[0043] The substrate layer 5 can be made of thick PP, PE and other plastic sheets, and the thin film layer 6 can be made of thin PP, PE plastic films.
[0044] Because the side of the sealed bag body 1 is compounded with a thin film layer 6 through the mesh adhesive layer 7, a dense bubble cavity 8 is formed. And the gas is inflated through the film inflation strip 9, and enters into each bubble cavity 8 through each air hole 106 and gap 702, thus forming a gas insulation interlayer 10 on the side of the sealed bag body 1, so that the filling bag has a good insulation effect. At the same time, the gas insulation interlayer 10 has good shock absorption and anti-collision performance. Besides, the gas insulation interlayer 10 is composed of a mesh adhesive layer 7 compounded with a thin film layer 6, which has high flatness, simple structure, low production cost, and can be widely used.
[0045] As shown in
[0046] Referring to
[0047] (1) printing one layer of a mesh adhesive layer 7 on one side of the substrate layer 5, wherein the mesh adhesive layer 7 is composed of a plurality of semi-sealed adhesive rings 701 evenly arranged, and a gap 702 is arranged between two adjacent semi-sealed adhesive rings 701;
[0048] (2) compounding a thin film layer 6 on the substrate layer 5 by the mesh adhesive layer 7 to form a composite layer, and a plurality of bubble cavities 8 are formed among the substrate layer 5, the mesh adhesive layer 7 and the thin film layer 6;
[0049] (3) tailoring the composite layer according to a unfold plane view of the filling bag, and pre-punching a filling hole and a liquid outlet hole at corresponding position;
[0050] (4) folding the composite layer in half, and placing a film inflation strip in the folded composite layer, then heat sealing to form a bottom sealed edge 103, a longitudinal sealed edge 104 and a top sealed edge 105, wherein each of the bottom sealed edge 103, longitudinal sealed edge 104 reserves space to form air holes 106, air flows between bubble cavities 8 through the air holes 106; and the film inflation strip 9 communicates with the bubble cavities 8;
[0051] (5) heat sealing the filling tube head 2 in the filling hole, heat sealing the liquid outlet tap 3 in the liquid outlet hole, respectively.
Embodiment 2
[0052] As shown in
[0053] The manufacturing method of the filling bag with good thermal insulation and anti-collision performance includes the following steps:
[0054] (1) printing a mesh adhesive layer 7 on one side of the substrate layer 5, wherein the mesh adhesive layer 7 is composed of a plurality of sealed adhesive rings 711 evenly arranged;
[0055] (2) filling each sealed adhesive ring 711 of the mesh adhesive layer 7 with an appropriate amount of foaming agent;
[0056] (3) compounding a thin film layer 6 on the substrate layer 5 by the mesh adhesive layer 7 to form a composite layer, and a plurality of bubble cavities 8 are formed among the substrate layer 5, the mesh adhesive layer 7 and the thin film layer 6, and each bubble cavity 8 seals the corresponding foaming agent;
[0057] (4) heating the foaming agent to release gas to fill each bubble cavity 8;
[0058] (5) tailoring the composite layer according to a unfold plane view of the filling bag, and pre-punching a filling hole and a liquid outlet hole at corresponding position;
[0059] (6) folding the composite layer in half, then heat sealing to form a bottom sealed edge 114, a longitudinal sealed edge 115 and a top sealed edge 116;
[0060] (7) heat sealing the filling tube head 2 in the filling hole, heat sealing the liquid outlet tap 3 in the liquid outlet hole, respectively.
[0061] The above description merely relates to embodiments of the present disclosure, and is not intended to limit the design of the present disclosure. Any equivalent changes made according to key points of the design of the present disclosure will fall within the scope of protection of the present disclosure.